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A Fuzzy Hypothesis Testing Based Sample Covariance Matrix for Spectrum Sensing in Cognitive Radio Systems

机译:基于模糊假设检测的认知无线电系统频谱感应矩阵

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Spectrum Sensing is a key technology in cognitive radio systems. Since orthogonal frequency division multiplexing (OFDM) is one of the major wideband transmission techniques, spectrum sensing of OFDM based primary user signals is considered in this work. This paper proposes a two-stage scheme-Fuzzy Hypothesis Testing based Sample Covariance Matrix (FHTSCM) for primary user signal detection. Firstly, a hypothesis testing scheme with p-value determination from the observed samples is used along with a fuzzy inference scheme for detecting primary user signals with SNR as low as -2dB. We recognize the equivalence of the probability of Type-I error and the probability of false alarm (Pfa) and use an important property of the p-value to form the fuzzy rule base. In the low SNR regime (less than -2dB), the second stage computes the sample covariance matrix from a limited number of observed samples and an appropriate test statistic is extracted and tested using Roy's detector. Since the statistical covariances of the received signal and noise are usually different, they can be used to differentiate the case where the primary user signals are present from the one where there is only noise. The simulations are performed for the 2K mode of the DVB-T transmission and the probability of detection for different SNR levels is presented to verify the methods.
机译:频谱感测是认知无线电系统中的关键技术。由于正交频分复用(OFDM)是主要的宽带传输技术之一,因此在这项工作中考虑了基于DM的主要用户信号的频谱感测。本文提出了一种基于两阶段的方案模糊假设检测,用于主要用户信号检测的基于样本协方差矩阵(FHTSCM)。首先,使用来自观察样本的p值测定的假设检测方案以及用于检测具有SNR的主要用户信号,低至-2dB。我们认识到I型错误概率的等价性和错误警报(PFA)的概率,并使用p值的重要属性来形成模糊规则库。在低SNR制度(小于-2dB)中,第二阶段从有限数量的观察样本计算样本协方差矩阵,并使用Roy检测器提取和测试适当的测试统计。由于接收信号和噪声的统计协方差通常是不同的,因此可以使用它们来区分主要用户信号存在于仅存在噪声的情况。对DVB-T传输的2K模式执行模拟,并且呈现了不同SNR水平的检测概率以验证这些方法。

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